Chemistry Labs

Problem 2

Astatine is the rarest naturally occurring element in the Earth's crust, with a total estimated mass of 30 g at any point in time; assume all astatine is the most stable naturally occurring isotope 219^{219}At. (a) Estimate how many At atoms occur naturally on Earth at any point in time. (b) Bismuth, obtained as a by-product of lead purification, is concentrated by adding magnesium and calcium to a lead–bismuth mixture; bismuth forms alloy A containing 7.91 % Ca and 9.60 % Mg by mass, with no lead. Determine the empirical formula of alloy A. (c) Alloy A reacts with chlorine gas to form bismuth and two ionic compounds B and C in a 2:1 ratio. Write the formulae of B and C. (d) Astatine is made by bombarding 83209^{209}_{83}Bi with α\alpha particles; the nuclei fuse to form yx^{x}_{y}At and two neutrons. Write the mass and atomic numbers of the astatine isotope. (e) Excess bismuth is removed with concentrated nitric acid, forming bismuth(III) nitrate, water and a colourless gas of molar mass 30.01 g mol−1^{-1}. Write the equation. (f) BrAt is made in two steps: BrX2\ce{Br2} reacts with D to give only E, and E reacts with AtX2\ce{At2} to give BrAt and D; the mass spectrum of E shows two major peaks of nearly equal intensity at m/z 205.82 and 207.82. Write the formulae of D and E. (g) 3.60 g of BrAt is synthesised; the half-life of this At isotope is 433 minutes. How long (to the nearest hour) until only 3.65 mg of BrAt remains?
Step 4 of 5: Nitric acid reaction and interhalogen
Bi+4 HNOX3→Bi(NOX3)X3+2 HX2O+NO;E=BrI, D=IX2\ce{Bi + 4HNO3 -> Bi(NO3)3 + 2H2O + NO};\quad \text{E} = \ce{BrI},\ \text{D} = \ce{I2}
Analysis

The 30.01 g mol−1^{-1} colourless gas is NO. The nearly equal peaks at 205.82 and 207.82 correspond to X79X2279BrX127X22127I\ce{^{79}Br^{127}I} and X81X2281BrX127X22127I\ce{^{81}Br^{127}I} (Br isotopes ~50:50), so E is BrI and D is IX2\ce{I2}: BrX2+IX2→2 BrI\ce{Br2 + I2 -> 2BrI}, then 2 BrI+AtX2→2 BrAt+IX2\ce{2BrI + At2 -> 2BrAt + I2}.